Enhanced proton conductivity of sulfonated poly(ether ether ketone) incorporating oxidized polyvinyl alcohol for high-performance proton exchange membranes

Alternative proton exchange membranes (PEMs) with high proton conductivity must be fabricated at reasonable costs to qualify as commercially used proton-exchange membrane fuel cells (PEMFCs).

Research article

Mohamed A. Ben Ali
Mohamed A. Ben Moussa
Souhib Umer Ilyas
Rizwan Nasir
Dorra Ghorbel
Sherif M. A. S. Keshk

Alternative proton exchange membranes (PEMs) with high proton conductivity must be fabricated at reasonable costs to qualify as commercially used proton-exchange membrane fuel cells (PEMFCs).

Publication date
2025-04-24
Journal / proceedings
Materials for Renewable and Sustainable Energy
Publisher
Springer Science and Business Media LLC
Volume
14
Issue
2
Article number
31
DOI
10.1007/s40243-025-00305-x

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Citation

Mohamed A. Ben Ali; Mohamed A. Ben Moussa; Souhib Umer Ilyas; Rizwan Nasir; Dorra Ghorbel; Sherif M. A. S. Keshk. 2025-04-24. Enhanced proton conductivity of sulfonated poly(ether ether ketone) incorporating oxidized polyvinyl alcohol for high-performance proton exchange membranes. Materials for Renewable and Sustainable Energy. https://doi.org/10.1007/s40243-025-00305-x

BECOME contributors

Prof. Sherif M. A. S. Keshk
ExpertScientist

Prof. Sherif M. A. S. Keshk

Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering

Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.

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Publication by a BECOME Researcher

ISSN
2194-1459, 2194-1467

Scientific authors are listed above. Content record maintained by BECOME.

Related researchers

Prof. Sherif M. A. S. Keshk
ExpertScientist

Prof. Sherif M. A. S. Keshk

Senior Researcher in Polymer Materials, Nanocomposites and Sustainable Materials Engineering

Sherif Keshk specialises in polymer materials, nanocomposites and sustainable materials engineering.

View details